
Electrical Schematics Course
Master electrical schematics from the ground up — reading, analysing, and drafting the drawings that power real industrial and commercial systems. This training covers DC and AC circuits, control logic, instrumentation loops, and troubleshooting workflows. Whether you work in the field or the design office, you will build the schematic literacy that gets the job done right.
What you will learn:
This course takes you from basic symbol recognition to full schematic interpretation across DC circuits, AC power distribution, ladder diagrams, and electronic components. You will learn to read instrumentation loop drawings, trace control logic through relay-based systems, and apply systematic troubleshooting methods using actual schematics. You will also practise drafting standards, revision control, and CAD-based schematic entry. Supplementary content covers PLC wiring diagrams, single-line drawings, renewable energy schematics, and safety compliance documentation. By the end, you will read and produce professional electrical drawings with confidence.
How you study in practice Electrical Schematics Course
How you practise Electrical Schematics Course
For businesses looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Electrical Schematics
Foundations of Electrical Schematics
Lesson 1 • Core Electrical Symbol Library
Introduces standardised symbols for passive and active components. Connects symbol recognition to accurate circuit interpretation throughout the course.
Lesson 2 • Title Blocks and Drawing Standards
Decodes title block fields including revision history, scale, and authorship. Aligns students with professional drawing management practices.
Lesson 3 • Schematic Notation and Annotations
Covers reference designators, value notation, and tolerance markings. Accurate annotation reading is essential for component identification in later chapters.
Lesson 4 • Lines, Nodes, and Connections
Explains how conductors, junctions, and crossovers are drawn and interpreted. Prevents misreading of connected vs. crossing wires.
Lesson 5 • Purpose and Scope of Schematics
Defines what electrical schematics communicate and why they differ from pictorial diagrams. Establishes the role of schematics in design, installation, and troubleshooting workflows.
Chapter 2HideHide detailsSee detailsReading Simple DC Circuits
Reading Simple DC Circuits
Lesson 1 • Series Circuit Topology
Traces current flow through series-connected components and identifies voltage drops. Builds the tracing skill used in every subsequent circuit analysis task.
Lesson 2 • Applying Ohm's Law from Schematics
Extracts component values from annotations to calculate voltage, current, and resistance. Bridges schematic reading with quantitative circuit analysis.
Lesson 3 • Parallel Circuit Topology
Identifies parallel branches and analyses current distribution. Contrasts with series topology to sharpen circuit-reading discrimination.
Lesson 4 • DC Power Sources on Schematics
Interprets battery, regulated supply, and reference symbols in DC schematics. Connects power source notation to polarity and voltage level identification.
Lesson 5 • Series-Parallel Combinations
Analyses mixed topologies by decomposing circuits into series and parallel segments. Prepares students for the complex layouts common in real equipment.
Chapter 3HideHide detailsSee detailsReading AC and Power Distribution Schematics
Reading AC and Power Distribution Schematics
Lesson 1 • Transformer Symbols and Configurations
Interprets step-up, step-down, isolation, and autotransformer symbols. Connects transformer notation to voltage level changes in distribution schematics.
Lesson 2 • Three-Phase System Schematics
Reads wye and delta configurations and identifies phase relationships on drawings. Prepares students for motor and industrial power schematics in later chapters.
Lesson 3 • Single-Phase Distribution Layouts
Traces line, neutral, and earth conductors in single-phase distribution schematics. Establishes the baseline for understanding three-phase systems.
Lesson 4 • Overcurrent and Protection Device Symbols
Identifies fuses, circuit breakers, and surge protection symbols in power drawings. Reinforces safe interpretation of protection coordination in distribution schematics.
Lesson 5 • AC Source and Load Symbols
Identifies AC generator, transformer, and load symbols specific to power schematics. Distinguishes AC notation from DC conventions established in Chapter 2.
Chapter 4HideHide detailsSee detailsControl and Logic Circuit Schematics
Control and Logic Circuit Schematics
Lesson 1 • Introduction to Ladder Diagrams
Explains the rung-and-rail structure of ladder logic and its relationship to relay control. Provides the framework for reading all industrial control schematics.
Lesson 2 • Relay and Contactor Schematics
Reads relay coil, contact, and contactor symbols in control circuit drawings. Connects relay operation to the switching logic traced in ladder diagrams.
Lesson 3 • Interlock and Safety Logic
Identifies electrical interlocks, E-stop circuits, and safety relay configurations. Ensures students can locate and verify safety-critical logic in control drawings.
Lesson 4 • Sensor and Input Device Symbols
Reads symbols for pushbuttons, limit switches, proximity sensors, and pilot lights. Completes the input-output picture of control circuit schematics.
Lesson 5 • Motor Starter and Control Circuits
Traces across-the-line and reduced-voltage motor starter schematics. Builds competency in reading the most common industrial control circuit type.
Chapter 5HideHide detailsSee detailsElectronic Component Schematics
Electronic Component Schematics
Lesson 1 • Diode and Rectifier Circuits
Identifies diode variants and traces rectifier topologies on schematics. Connects diode symbol reading to power supply and signal conditioning circuits.
Lesson 2 • Transistor and FET Symbols
Reads BJT, MOSFET, and JFET symbols including terminal labelling. Prepares students to interpret switching and amplification stages in electronic schematics.
Lesson 3 • Power Supply Schematic Sections
Traces regulated linear and switching power supply schematics from input to output. Integrates diode, transistor, and IC reading skills into a complete circuit analysis.
Lesson 4 • Operational Amplifier Circuits
Interprets op-amp symbols, supply pins, and feedback network configurations. Builds ability to identify inverting, non-inverting, and comparator stages.
Lesson 5 • Integrated Circuit Pinout Reading
Reads IC package symbols, pin numbering, and functional block annotations. Enables accurate component identification and datasheet cross-referencing.
Chapter 6HideHide detailsSee detailsInstrumentation and Signal Wiring Diagrams
Instrumentation and Signal Wiring Diagrams
Lesson 1 • Transmitter and Sensor Loop Diagrams
Traces 4–20 mA current loops from field transmitter to control system input. Connects loop diagram reading to signal integrity and wiring verification tasks.
Lesson 2 • Signal Conditioning Circuit Schematics
Reads schematics for amplifiers, filters, and analog-to-digital converter stages. Bridges electronic component knowledge with instrumentation signal chain reading.
Lesson 3 • Thermocouple and RTD Wiring Diagrams
Interprets thermocouple extension wire, cold junction, and RTD bridge circuit drawings. Addresses the unique notation challenges of temperature sensor wiring.
Lesson 4 • Instrumentation Symbol Standards
Introduces instrument bubble notation, tag numbers, and line type conventions. Provides the symbol vocabulary needed for all instrumentation schematic sections.
Lesson 5 • Fieldbus and Digital Signal Wiring
Reads wiring diagrams for digital fieldbus, HART, and discrete I/O connections. Prepares students for modern instrumentation systems beyond analog loops.
Chapter 7HideHide detailsSee detailsSchematic Troubleshooting Techniques
Schematic Troubleshooting Techniques
Lesson 1 • Fault Analysis Using Schematics
Introduces symptom-to-schematic mapping and fault hypothesis formation. Establishes the analytical framework applied throughout all troubleshooting sections.
Lesson 2 • Cross-Referencing Multi-Sheet Schematics
Navigates cross-references, continuation arrows, and sheet connectors in multi-page drawings. Prevents fault-tracing errors caused by missed inter-sheet connections.
Lesson 3 • Documenting Findings on Schematics
Records test results, fault locations, and corrective actions directly on schematic prints. Reinforces professional documentation habits tied to drawing revision control.
Lesson 4 • Tracing Signal Flow for Fault Isolation
Uses signal flow direction to divide circuits into suspect and verified sections. Applies half-split and signal-tracing methods guided by schematic layout.
Lesson 5 • Test Point Identification and Measurement
Locates test points, measurement nodes, and probe access on schematics. Connects schematic annotation to physical meter and oscilloscope placement.
Chapter 8HideHide detailsSee detailsCreating and Revising Electrical Schematics
Creating and Revising Electrical Schematics
Lesson 1 • Using CAD Tools for Schematic Entry
Operates schematic capture software to place symbols, route nets, and assign references. Builds practical tool proficiency needed for professional drawing production.
Lesson 2 • Revision Control and Change Management
Applies revision numbering, change description fields, and approval workflows to updated drawings. Ensures students manage drawing history in compliance with professional standards.
Lesson 3 • Schematic Drafting Standards and Rules
Applies symbol placement, line routing, and annotation rules from recognised drafting standards. Establishes the quality baseline for all drawings produced in this chapter.
Lesson 4 • Building a Complete Circuit Schematic
Constructs a multi-component schematic from a written circuit description. Integrates symbol, annotation, and layout skills into a full drawing exercise.
Lesson 5 • Schematic Review and Quality Checks
Conducts peer review, design rule checks, and completeness audits on finished schematics. Closes the drafting workflow with verification practices used in professional environments.
Your valid completion certificate
This course is for you:
Electricians: seeking to move beyond wiring diagrams into full schematic interpretation.
Maintenance technicians: needing to trace faults through complex industrial control drawings.
Electrical engineering students: building practical drawing skills alongside their academic coursework.
Career changers: entering the electrical or automation field from an unrelated technical background.
Instrumentation technicians: expanding their loop diagram skills into broader schematic literacy.
Facility managers: responsible for overseeing electrical systems and reviewing contractor documentation.
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